Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites

(1-x)(0.93Bi0.5Na0.5TiO3/0.07BaTiO3)-xCoFe2O4 ((1-x)BNT/BT-xCFO, where x = 0.1, 0.2, 0.3, 0.4 and 0.5) composite samples were synthesized by microwave assisted solid state reaction route and sintered at 1050 °C. X-ray diffraction study showed the presence of ferroelectric/ferromagnetic (FE/FM) phase...

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Main Authors: Dipika Nanda, Buddhadev Samanta, Mukesh Goel, Pawan Kumar
Format: Article
Language:English
Published: University of Novi Sad 2020-09-01
Series:Processing and Application of Ceramics
Subjects:
pfm
mfm
Online Access:http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2003.pdf
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spelling doaj-4f4ef8609c7744e78cc4ddeccdebc1772020-11-25T03:54:03ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312406-10342020-09-0114319520210.2298/PAC2003195NEvidence of magneto-electric coupling and electrical study of CFO modified BNT/BT compositesDipika Nanda0Buddhadev Samanta1Mukesh Goel2Pawan Kumar3Department of Physics, National Institute of Technology, Rourkela 769008 Odisha, IndiaDepartment of Physics, National Institute of Technology, Rourkela 769008 Odisha, IndiaDepartment of Engineering and Maths, Sheffield Hallam University, Sheffield, S1 1WB, UKDepartment of Physics, National Institute of Technology, Rourkela 769008 Odisha, India(1-x)(0.93Bi0.5Na0.5TiO3/0.07BaTiO3)-xCoFe2O4 ((1-x)BNT/BT-xCFO, where x = 0.1, 0.2, 0.3, 0.4 and 0.5) composite samples were synthesized by microwave assisted solid state reaction route and sintered at 1050 °C. X-ray diffraction study showed the presence of ferroelectric/ferromagnetic (FE/FM) phases without any peak of secondary phase. This was further confirmed by SEM study showing the presence of both FE/FM grains distinctly. Frequency dependent dielectric study showed maximum dielectric constant (εr) for the composite sample with x = 0.4. Polarization versus electric field (P-E) loop study revealed that maximum remnant polarization (2Pr = 1.75 µC/cm2) was found also for the 0.6BNT/BT-0.4CFO sample. Remnant magnetization (Mr) of the composite sample with x = 0.4 was found to be ∼7.81 emu/g. Magnetodielectric (MD) study of the 0.6BNT/BT-0.4CFO composite sample showed decrease in εr with the application of magnetic field and a MD effect of ∼2.4% (at 10 kHz) was found. Low leakage current value (∼10−4 A) was obtained in the 0.6BNT/BT0.4CFO composite sample. Change in piezoresponse force microscopy contrast after poling indicated on the changes in polarization of the ferroelectric domains. Reduction in Mr, observed in magnetic force microscopy contrast gave a clear evidence of presence of electric field induced magneto-electric (ME) coupling in the 0.6BNT/BT-0.4CFO composite sample.http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2003.pdfmultiferroicsdielectric studymicrowave processingpfmmfm
collection DOAJ
language English
format Article
sources DOAJ
author Dipika Nanda
Buddhadev Samanta
Mukesh Goel
Pawan Kumar
spellingShingle Dipika Nanda
Buddhadev Samanta
Mukesh Goel
Pawan Kumar
Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
Processing and Application of Ceramics
multiferroics
dielectric study
microwave processing
pfm
mfm
author_facet Dipika Nanda
Buddhadev Samanta
Mukesh Goel
Pawan Kumar
author_sort Dipika Nanda
title Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
title_short Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
title_full Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
title_fullStr Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
title_full_unstemmed Evidence of magneto-electric coupling and electrical study of CFO modified BNT/BT composites
title_sort evidence of magneto-electric coupling and electrical study of cfo modified bnt/bt composites
publisher University of Novi Sad
series Processing and Application of Ceramics
issn 1820-6131
2406-1034
publishDate 2020-09-01
description (1-x)(0.93Bi0.5Na0.5TiO3/0.07BaTiO3)-xCoFe2O4 ((1-x)BNT/BT-xCFO, where x = 0.1, 0.2, 0.3, 0.4 and 0.5) composite samples were synthesized by microwave assisted solid state reaction route and sintered at 1050 °C. X-ray diffraction study showed the presence of ferroelectric/ferromagnetic (FE/FM) phases without any peak of secondary phase. This was further confirmed by SEM study showing the presence of both FE/FM grains distinctly. Frequency dependent dielectric study showed maximum dielectric constant (εr) for the composite sample with x = 0.4. Polarization versus electric field (P-E) loop study revealed that maximum remnant polarization (2Pr = 1.75 µC/cm2) was found also for the 0.6BNT/BT-0.4CFO sample. Remnant magnetization (Mr) of the composite sample with x = 0.4 was found to be ∼7.81 emu/g. Magnetodielectric (MD) study of the 0.6BNT/BT-0.4CFO composite sample showed decrease in εr with the application of magnetic field and a MD effect of ∼2.4% (at 10 kHz) was found. Low leakage current value (∼10−4 A) was obtained in the 0.6BNT/BT0.4CFO composite sample. Change in piezoresponse force microscopy contrast after poling indicated on the changes in polarization of the ferroelectric domains. Reduction in Mr, observed in magnetic force microscopy contrast gave a clear evidence of presence of electric field induced magneto-electric (ME) coupling in the 0.6BNT/BT-0.4CFO composite sample.
topic multiferroics
dielectric study
microwave processing
pfm
mfm
url http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2003.pdf
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AT buddhadevsamanta evidenceofmagnetoelectriccouplingandelectricalstudyofcfomodifiedbntbtcomposites
AT mukeshgoel evidenceofmagnetoelectriccouplingandelectricalstudyofcfomodifiedbntbtcomposites
AT pawankumar evidenceofmagnetoelectriccouplingandelectricalstudyofcfomodifiedbntbtcomposites
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